Thompson C L, Stephenson F A
Department of Pharmaceutical Chemistry, School of Pharmacy, London, England.
J Neurochem. 1994 May;62(5):2037-44. doi: 10.1046/j.1471-4159.1994.62052037.x.
The developmental properties of primary rat cerebellar granule cells have been characterised with respect to their expression of GABAA receptor subtypes using both an immunological approach and radioligand binding assays. At day 1 in culture, the GABAA receptor alpha 1 subunit was detectable in immunoblots and increased in level up to day 9. The GABAA receptor alpha 6 subunit was not detectable at day 1; however, at days 3-5, a specific M(r) 58,000 anti-alpha 6 1-16 Cys immunoreactive species was present which further increased in level up to 9 days in culture. Similar qualitative results were obtained for the expression of the GABAA receptor alpha 6 subunit in age-matched rat cerebellar membranes. In parallel studies, it was found that although there was an overall increase in [3H]Ro 15-4513 binding sites with days in culture, the relative contributions of diazepam-sensitive and diazepam-insensitive [3H]Ro 15-4513 binding changed. A time-dependent enrichment of the diazepam-insensitive binding site up to a maximum of 74% of total [3H]Ro 15-4513 sites was found. This was concomitant with the appearance of the GABAA receptor alpha 6 subunit. These results are in agreement with the pharmacology described for alpha 6 beta gamma 2 cloned receptors. They suggest a developmentally regulated expression of the GABAA receptor alpha 6 subunit gene at a time that is correlated in vivo with establishment of neuronal connections.
利用免疫学方法和放射性配体结合试验,对原代大鼠小脑颗粒细胞的发育特性进行了研究,重点关注其GABAA受体亚型的表达情况。在培养第1天时,免疫印迹中可检测到GABAA受体α1亚基,其水平在第9天前持续升高。在第1天时未检测到GABAA受体α6亚基;然而,在第3 - 5天时,出现了一种特异性的分子量为58,000的抗α6 1 - 16 Cys免疫反应性物质,其水平在培养至9天时进一步升高。在年龄匹配的大鼠小脑膜中,GABAA受体α6亚基的表达也获得了类似的定性结果。在平行研究中发现,虽然随着培养天数的增加,[3H]Ro 15 - 4513结合位点总体上有所增加,但地西泮敏感和地西泮不敏感的[3H]Ro 15 - 4513结合的相对贡献发生了变化。发现地西泮不敏感结合位点随时间逐渐富集,最高可达总[3H]Ro 15 - 4513位点的74%。这与GABAA受体α6亚基的出现是同时发生的。这些结果与针对α6βγ2克隆受体所描述的药理学一致。它们表明,GABAA受体α6亚基基因在发育过程中的表达受到调控,且这一时期在体内与神经元连接的建立相关。